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Thermodynamically constrained averaging theory approach for modeling flow and transport phenomena in porous medium systems: 6. Two-fluid-phase flow

机译:热力学约束平均理论方法,用于模拟多孔介质系统中的流动和传输现象:6.两相流

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This work is the sixth in a series of papers on the thermodynamically constrained averaging theory (TCAT) approach for modeling flow and transport phenomena in multiscale porous medium systems. Building upon the general TCAT framework and the mathematical foundation presented in previous works, the limiting case of connected two-fluid-phase flow is considered. A constrained entropy inequality is developed based upon a set of primary restrictions. Formal approximations are introduced to deduce a general simplified entropy inequality (SEI). The SEI is used along with secondary restrictions and closure approximations consistent with the SEI to produce a general functional form of a two-phase-flow model. The general model is in turn simplified to yield a hierarchy of models by neglecting common curves and by neglecting both common curves and interfaces. The simplest case considered corresponds to a traditional two-phase-flow model. The more sophisticated models including interfaces and common curves are more physically realistic than traditional models. All models in the hierarchy are posed in terms of precisely defined variables that allow for a rigorous connection with the microscale. The explicit nature of the restrictions and approximations used in developing this hierarchy of models provides a clear means to both understand the limitations of traditional models and to build upon this work to produce more realistic models.
机译:这项工作是关于热力学约束平均理论(TCAT)方法的系列论文的第六篇,该方法用于对多尺度多孔介质系统中的流动和传输现象进行建模。在一般的TCAT框架和先前工作中介绍的数学基础的基础上,考虑了连通的两相流的极限情况。基于一组主要限制条件,产生了一个约束熵不等式。引入形式逼近来推导一般的简化熵不等式(SEI)。 SEI与与SEI一致的次要限制和闭合近似一起使用,以产生两相流模型的一般功能形式。通过忽略公共曲线并同时忽略公共曲线和界面,可以简化通用模型以产生模型的层次结构。所考虑的最简单情况对应于传统的两相流模型。包括界面和公共曲线在内的更复杂的模型在物理上比传统模型更真实。层次结构中的所有模型均根据精确定义的变量来构成,这些变量允许与微尺度进行严格连接。在开发这种模型层次结构中使用的限制和近似的明确性质,为了解传统模型的局限性和在此工作的基础上提供更现实的模型提供了明确的手段。

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